1.Expression efficiency of three DNA plamids and their mRNAs expressing foot-and-mouth disease virus (FMDV) antigenic proteins.
Lixin JIANG ; Haiyun LIU ; Yifan LIU ; Yuqing MA ; Shiqi SUN ; Zezhong ZHENG ; Huichen GUO
Chinese Journal of Biotechnology 2025;41(7):2623-2633
Foot-and-mouth disease (FMD) is one of the major animal infectious diseases in the world. All cloven-hoofed animals are susceptible to FMD. Vaccination is still the first choice for the prevention and control of FMD. mRNA vaccines can be rapidly designed, synthesized, and produced on a large scale in vitro, and they can induce effective protective immune responses, demonstrating the advantages of rapid development, easy preparation, and low biosafety risks. The design of untranslated regions is a key to enhancing the expression and efficacy of mRNA vaccines. In order to generate an efficient FMD mRNA vaccine, we designed three FMD P12A3C expression vectors with different untranslated regions and synthesized corresponding mRNAs. By comparing expression efficiency of these vectors and their mRNAs at different time points and in different cell lines, we found that the mRNA P12A3C-UTR3 had the best expression and universality. This study laid a foundation for the development of mRNA vaccines against FMD and provided a theoretical basis for the optimal sequence design of efficient mRNA.
Foot-and-Mouth Disease Virus/genetics*
;
Animals
;
RNA, Messenger/biosynthesis*
;
Foot-and-Mouth Disease/immunology*
;
Antigens, Viral/biosynthesis*
;
Viral Vaccines/biosynthesis*
;
Genetic Vectors/genetics*
;
Cell Line
;
Vaccines, DNA/immunology*
2.Immunogenic evaluation of pseudorabies virus gB protein expressed in the baculovirus-insect cell system.
Jin WANG ; Kai WANG ; Ying ZHANG ; Shuzhen TAN ; Shiqi SUN ; Huichen GUO ; Shuanghui YIN ; Jiaqiang NIU
Chinese Journal of Biotechnology 2025;41(7):2694-2706
Pseudorabies (PR) is an infectious disease caused by the pseudorabies virus (PRV), affecting various domesticated and wild animals. Since pigs are the only natural hosts of PRV, PR poses a serious threat to the pig farming industry. Currently, PR is primarily prevented through vaccination with inactivated vaccines or genetically modified attenuated live vaccines. Developing safe and effective genetically engineered vaccines would facilitate the eradication and control of PR. In this study, the PRV vaccine strain Bartha-K61 was used as the reference strain. The gB protein was expressed via the baculovirus-insect cell expression system. Non-denaturing gel electrophoresis confirmed that the gB protein could form a trimeric structure. The purified gB protein was used to immunize mice, and the immune effect was evaluated by a challenge test. The results showed that the gB antigen induced a strong immune response in mice, with the serum-neutralizing antibody titer above 1:70. The lymphocyte stimulation index reached more than 1.29, and the level of (interferon gamma, IFN-γ) release was higher than 100 pg/mL. After immunization, mice were challenged with the virus at a dose of 104 TCID₅₀/mL, 200 μL per mouse, and the clinical protection rate was 100%. Immunohistochemistry, histopathological section, and tissue viral load results showed that the pathological damage and viral load in the gB-immunized group were significantly lower than those in the PBS group. In summary, the gB protein obtained in this study induced strong humoral and cellular immune responses in mice, laying a foundation for developing a recombinant gB protein subunit vaccine.
Animals
;
Mice
;
Baculoviridae/metabolism*
;
Viral Envelope Proteins/biosynthesis*
;
Herpesvirus 1, Suid/genetics*
;
Pseudorabies/immunology*
;
Swine
;
Pseudorabies Vaccines/genetics*
;
Antibodies, Viral/blood*
;
Insecta/cytology*
;
Mice, Inbred BALB C
;
Female
;
Viral Vaccines/immunology*
3.Optimized expression, preparation of human papillomavirus 16 L2E7 fusion protein and its inhibitory effect on tumor growth in mice.
Yunshui JIANG ; Jianbo LI ; Meng GAO ; Jiao REN ; Sufeng JIN ; Gang CHEN ; Jie WU ; Fangcheng ZHUANG ; Houwen TIAN
Chinese Journal of Biotechnology 2015;31(4):566-576
HPV16 L2E7 is a fusion protein used for therapeutical vaccine targeting HPV virus. To increase its expression in Escherichia coli, we optimized the codon usage of HPV16 l2e7 gene based on its codon usage bias. The optimized gene of HPV16 sl2e7 was cloned into three different vectors: pGEX-5X-1, pQE30, ET41a, and expressed in JM109, JM109 (DE3) and BL21 (DE3) lines separately. A high expression line was selected with pET41a vector in BL21 (DE3) cells. After optimization of the growth condition, including inoculation amount, IPTG concentration, induction time and temperature, the expression level of HPV16 L2E7 was increased from less than 10% to about 28% of total protein. HPV16 L2E7 protein was then purified from 15 L culture by means of SP Sepharose Fast Flow, Q Sepharose Fast Flow and Superdex 200 pg. After renaturing, HPV16 L2E7 protein with ≥ 95% purity was achieved, which was confirmed via SDS-PAGE gel and Western blotting. The combined use of purified HPV16 L2E7 and CpG helper has shown clear inhibition of tumor growth in mice injected with tumor cells, with six out of eight mice shown no sign of tumor. This study lays a solid foundation for a new pipeline of large-scale vaccine production.
Animals
;
Capsid Proteins
;
biosynthesis
;
Codon
;
Electrophoresis, Polyacrylamide Gel
;
Escherichia coli
;
Genetic Vectors
;
Human papillomavirus 16
;
Mice
;
Neoplasms, Experimental
;
prevention & control
;
Oncogene Proteins, Viral
;
biosynthesis
;
Papillomavirus E7 Proteins
;
biosynthesis
;
Papillomavirus Vaccines
;
therapeutic use
;
Recombinant Fusion Proteins
;
biosynthesis
4.Immunogenicity and heterologous protection in mice with a recombinant adenoviral-based vaccine carrying a hepatitis C virus truncated NS3 and core fusion protein.
Jie GUAN ; Yao DENG ; Hong CHEN ; Yang YANG ; Bo WEN ; Wenjie TAN
Chinese Journal of Virology 2015;31(1):7-13
To develop a safe and broad-spectrum effective hepatitis C virus (HCV) T cell vaccine,we constructed the recombinant adenovirus-based vaccine that carried the hepatitis C virus truncated NS3 and core fusion proteins. The expression of the fusion antigen was confirmed by in vitro immunofluorescence and western blotting assays. Our results indicated that this vaccine not only stimulated antigen-specific antibody responses,but also activated strong NS3-specific T cell immune responses. NS3-specific IFN-γ+ and TNF-α+ CD4+ T cell subsets were also detected by a intracellular cytokine secretion assay. In a surrogate challenge assay based on a recombinant heterologous HCV (JFH1,2a) vaccinia virus,the recombinant adenovirus-based vaccine was capable of eliciting effective levels of cross-protection. These findings have im- portant implications for the study of HCV immune protection and the future development of a novel vaccine.
Adenoviridae
;
genetics
;
metabolism
;
Animals
;
CD4-Positive T-Lymphocytes
;
immunology
;
Cross Protection
;
Female
;
Genetic Vectors
;
biosynthesis
;
genetics
;
Hepacivirus
;
genetics
;
immunology
;
Hepatitis C
;
immunology
;
prevention & control
;
virology
;
Humans
;
Interferon-gamma
;
immunology
;
Mice
;
Mice, Inbred BALB C
;
Recombinant Proteins
;
administration & dosage
;
genetics
;
immunology
;
Viral Core Proteins
;
administration & dosage
;
genetics
;
immunology
;
Viral Hepatitis Vaccines
;
administration & dosage
;
genetics
;
immunology
;
Viral Nonstructural Proteins
;
administration & dosage
;
genetics
;
immunology
5.Investigation of a special neutralizing epitope of HEV E2s.
Min YOU ; Lu XIN ; Yi YANG ; Xiao ZHANG ; Yingwei CHEN ; Hai YU ; Shaowei LI ; Jun ZHANG ; Zhiqiang AN ; Wenxin LUO ; Ningshao XIA
Protein & Cell 2014;5(12):950-953
Antibodies, Monoclonal
;
chemistry
;
immunology
;
Antigens, Viral
;
chemistry
;
genetics
;
immunology
;
Binding Sites
;
Capsid Proteins
;
chemistry
;
genetics
;
immunology
;
Epitopes
;
chemistry
;
genetics
;
immunology
;
Escherichia coli
;
genetics
;
metabolism
;
Gene Expression
;
Hepatitis E
;
immunology
;
prevention & control
;
virology
;
Hepatitis E virus
;
chemistry
;
immunology
;
Humans
;
Molecular Docking Simulation
;
Mutagenesis, Site-Directed
;
Peptide Mapping
;
Protein Binding
;
Recombinant Proteins
;
chemistry
;
genetics
;
immunology
;
Viral Hepatitis Vaccines
;
administration & dosage
;
biosynthesis
6.Construction and eukaryotic expression of PVAX1-hPV58mE6E7fcGB composite gene vaccine.
Journal of Biomedical Engineering 2013;30(5):1102-1107
To construct and express a composite gene vaccine for human papillomavirus 58(HPV58)-associated cervical cancer, we inserted HPV58mE6E7 fusion gene into pCI-Fc-GPI eukaryotic expression vector, constructing a recombinant plasmid named pCI-sig-HPV58mE6E7-Fc-GPI. Then we further inserted fragment of sig-HPV58mE6E7Fc-GPI into the novel vaccine vector PVAX1-IRES-GM/B7, constructing PVAX1-HPV58mE6E7FcGB composite gene vaccine. PVAX1-HPV58mE6E7FcGB vaccine was successfully constructed and identified by restriction endonuclease and sequencing analysis. Eukaryotic expression of fusion antigen sig-HPV58mE6E7-Fc-GPI and molecular ad-juvant GM-CSF and B7. 1 were proved to be realized at the same time by flow cytometry and immunofluorescence. So PVAX1-HPV58mE6E7FcGB can be taken as a candidate of therapeutic vaccine for HPV58-associated tumors and their precancerous transformations.
Cancer Vaccines
;
biosynthesis
;
genetics
;
Capsid Proteins
;
biosynthesis
;
genetics
;
Female
;
Humans
;
Oncogene Proteins, Viral
;
biosynthesis
;
genetics
;
Papillomavirus E7 Proteins
;
biosynthesis
;
genetics
;
Papillomavirus Vaccines
;
biosynthesis
;
Recombinant Proteins
;
biosynthesis
;
genetics
;
immunology
;
Uterine Cervical Neoplasms
;
prevention & control
;
Vaccines, DNA
;
biosynthesis
7.Study on genetic transformation of antigen G3VP7 gene of human rotavirus in peanut.
Yuchen JIA ; Kai ZHAO ; Xin XUE ; Wei LI ; Shaowei LI ; Dehu LIU
Journal of Biomedical Engineering 2012;29(2):328-331
In order to increase the expression level of target gene and to simplify the purifying process of separation and purification, we performed the transgenetic research of antigen VP7 gene into peanut via Agrobacterium tumefaciens. The plant binary expression vector is pBOG3VP7 harboring fusion gene oleosin-vp7, which is promoted by ole-promoter. Cotyledon nodes were used as transformation recipients. Transformed individuals were obtained through selection on medium containing 125 mg L-1 Kan. Integration of transgenes was assessed by PCR amplification and PCR-Southern blot hybridization. Taking pBOG3VP7 plasmid as positive control, non-transformed peanut as negative control. 6 plants among 11 plants grown up through seletion medium were detected by PCR and the rate of positive plants is 54.5%. PCR positive plants were further analysed by PCR-Southern blot hybridization. The results showed that 3 plants have DNA bloting bands. The results also showed that the foreign gene was integrated into genome of transformed peanuts. Elevated expression of rotavirus VP7 antigen in transgenic peanuts was a critical factor in the development of efficient and cheap plant oral vaccine.
Agrobacterium tumefaciens
;
genetics
;
Antigens, Viral
;
biosynthesis
;
genetics
;
Arachis
;
genetics
;
metabolism
;
Capsid Proteins
;
biosynthesis
;
genetics
;
Plants, Genetically Modified
;
genetics
;
metabolism
;
Rotavirus
;
genetics
;
immunology
;
Transformation, Genetic
;
Vaccines, Synthetic
8.Establishment of a stable and inducible mammalian cell line expressing influenza virus A M2 protein.
Xiaoyu LIU ; Jianqiang GUO ; Lihong YAO ; Aijun CHEN ; Jinqi FU ; Zhiqing ZHANG
Chinese Journal of Biotechnology 2011;27(5):747-754
Matrix protein 2(M2) is an integral tetrameric membrane protein of influenza A virus, which functions as ion channel. M2 sequence has shown remarkable conservation, so there has been growing interest in it as "universal" vaccine. In order to establish a stable 293 cell line that express M2 protein under the control of the tetracycline operator, M2 gene was obtained by PCR amplification from the plasmid containing the segment 7 of influenza A virus strain A/PR/8/34 firstly. The PCR product was cloned into BamH I/Not I restriction site of pcDNA5/FRT/TO vector, and cotransfected with pOG44 which express Flp recombinase into Flp-In T-REx-293 cell. Integration of pcDNA5/FRT/TO-M2 into the cell genome at the Flp Recombination Target (FRT) site brought the SV40 promoter and the initiation codon in frame with the hygromycin resistance gene. Thus, stable cell lines were selected for hygromycin resistance. The expression of M2 protein from hygromycin-resistant cell was induced by addition of tetracycline into the cell culture media, and then tested by indirect immunofluorescence assay (IFA). 16 strains with high expression of M2 were selected. After subculturing for more than ten passages, the cell lines still stably expressed M2 protein. No M2 protein could be detected without tetracycline induction, suggesting that the expression was strictly controlled by tetracycline operator. The cell lines expressing M2 will be useful for further functional studies of M2 protein, detection of immune response against natural structure M2 protein and development of live attenuated influenza virus vaccine with reverse genetics technique.
Animals
;
Cloning, Molecular
;
Gene Expression
;
Genetic Vectors
;
genetics
;
HEK293 Cells
;
Humans
;
Influenza A virus
;
genetics
;
metabolism
;
Influenza Vaccines
;
genetics
;
Operator Regions, Genetic
;
Recombinant Proteins
;
biosynthesis
;
genetics
;
Tetracycline
;
pharmacology
;
Transfection
;
Viral Matrix Proteins
;
biosynthesis
;
genetics
9.Effect of the glycine-rich region deleted PPV VP2 to the VLPs.
Dishi CHEN ; Wanzhu GUO ; Yang CHEN ; Zhiwen XU ; Wen LI ; Yupeng REN ; Xiaoyu WANG
Chinese Journal of Biotechnology 2011;27(12):1729-1741
The N-terminal of porcine parvovirus (PPV) viral protein 2 (VP2) links a glycine-rich domain which is a cleavage site of PPV VP3.In order to confirm that the glycine-rich domain was essential for the self-assembling of virus-like particles (VLPs).The VP2 gene with glycine-rich domain deleted and the complete VP2 gene were inserted to eukaryotic expression vector pCI-neo and were named pCI-AVP2 and pCI-VP2. Then, pCI-delta VP2, pCI-VP2 and pCI-neo were transferred into Vero Cells by liposome and the VLPs was detected by SDS-PAGE, Western blotting, indirect immunofluorescence and immunoelectron microscopy. Furthermore, 56 female Kunming mice were divided into 5 groups and injected intramuscularly with pCI-delta VP2, pCI-VP2 and pCI-neo as DNA vaccine, PPV inactivated vaccine and normal saline separately. The peripheral blood of the mice was collected to analyze the subgroups of the peripheral blood mononuclear cell by flow cytometry, to detect the antibody and lymphocyte proliferation by indirect-ELISA and MTT assay separately. The results show that the VLPs were observed both in the pCI-delta VP2 and pCI-VP2 transferred Vero Cells. The two VLPs could agglutinate guinea pig erythrocytes. The results also show that both the pCI-delta VP2 and pCI-VP2 vaccine induced special cellular and humoral immunity effectively. Those results revealed that the glycine-rich domain is not essential for the VPL's self-assembling. This study provides a new theoretical evidence for the relationship between the gene structure and protein function of VP2.
Animals
;
Antigens, Viral
;
genetics
;
metabolism
;
Capsid Proteins
;
genetics
;
metabolism
;
Cercopithecus aethiops
;
Female
;
Genetic Vectors
;
genetics
;
Glycine
;
Mice
;
Sequence Deletion
;
Swine
;
Transfection
;
Vaccination
;
Vaccines, Virus-Like Particle
;
biosynthesis
;
immunology
;
Vero Cells
10.Structural vaccinology: structure-based design of influenza A virus hemagglutinin subtype-specific subunit vaccines.
Chunling XUAN ; Yi SHI ; Jianxun QI ; Wei ZHANG ; Haixia XIAO ; George F GAO
Protein & Cell 2011;2(12):997-1005
There is a great need for new vaccine development against influenza A viruses due to the drawbacks of traditional vaccines that are mainly prepared using embryonated eggs. The main component of the current split influenza A virus vaccine is viral hemagglutinin (HA) which induces a strong antibody-mediated immune response. To develop a modern vaccine against influenza A viruses, the current research has been focused on the universal vaccines targeting viral M2, NP and HA proteins. Crystallographic studies have shown that HA forms a trimer embedded on the viral envelope surface, and each monomer consists of a globular head (HA1) and a "rod-like" stalk region (HA2), the latter being more conserved among different HA subtypes and being the primary target for universal vaccines. In this study, we rationally designed the HA head based on the crystal structure of the 2009-pandemic influenza A (H1N1) virus HA as a model, tested its immunogenicity in mice, solved its crystal structure and further examined its immunological characteristics. The results show that the HA globular head can be easily prepared by in vitro refolding in an E. coli expression system, which maintains its intact structure and allows for the stimulation of a strong immune response. Together with recent reports on some similar HA globular head preparations we conclude that structure-based rational design of the HA globular head can be used for subtype-specific vaccines against influenza viruses.
Animals
;
Antibodies, Viral
;
immunology
;
Crystallography, X-Ray
;
Drug Design
;
Female
;
Freund's Adjuvant
;
administration & dosage
;
Hemagglutinin Glycoproteins, Influenza Virus
;
genetics
;
immunology
;
Humans
;
Influenza A Virus, H1N1 Subtype
;
genetics
;
immunology
;
Influenza Vaccines
;
administration & dosage
;
biosynthesis
;
Influenza, Human
;
immunology
;
prevention & control
;
virology
;
Mice
;
Mice, Inbred BALB C
;
Models, Molecular
;
Protein Folding
;
Recombinant Proteins
;
genetics
;
immunology
;
Structure-Activity Relationship
;
Vaccination
;
Vaccines, Subunit
;
administration & dosage
;
biosynthesis

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